CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K

The CO2 absorption, density, viscosity, pH, and electric conductivity were measured for aqueous solutions of butylethanolamine (BEA) and methyldiethanolamine (MDEA) at 313.2 K under atmospheric pressure. The CO2 loading [mol-CO2/mol-amine] of aqueous BEA and MDEA solutions studied decreased with inc...

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Main Authors: Fujita, Kento, Okada, Masaki, Hoshina, Taka Aki, Yamada, Hidetaka, Tsuji, Tomoya, Hiaki, Toshihiko
Format: Article
Published: Japan Society for Analytical Chemistry 2019
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Online Access:http://eprints.utm.my/id/eprint/89299/
http://dx.doi.org/10.2116/bunsekikagaku.68.647
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spelling my.utm.892992021-02-09T08:25:58Z http://eprints.utm.my/id/eprint/89299/ CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K Fujita, Kento Okada, Masaki Hoshina, Taka Aki Yamada, Hidetaka Tsuji, Tomoya Hiaki, Toshihiko T Technology (General) The CO2 absorption, density, viscosity, pH, and electric conductivity were measured for aqueous solutions of butylethanolamine (BEA) and methyldiethanolamine (MDEA) at 313.2 K under atmospheric pressure. The CO2 loading [mol-CO2/mol-amine] of aqueous BEA and MDEA solutions studied decreased with increasing BEA and MDEA concentration. The CO2 loading of an aqueous BEA solution was larger than that of an aqueous MDEA solution in the range of 10 - 40 wt% amine concentration. The electric conductivity of the aqueous BEA solution is larger than that of aqueous MDEA solutions, and the amine concentration dependence of the electric conductivities for both solutions studied showed maxima at 10 wt%. The electric conductivities of BEA and MDEA solutions after CO2 absorption increased with increasing CO2 loading. The CO2 loading dependence of the electric conductivity was correlated with a linear function. It may be suggested that the correlation coefficients predict the CO2 loading and amine concentration in solution at 313.2 K. Japan Society for Analytical Chemistry 2019 Article PeerReviewed Fujita, Kento and Okada, Masaki and Hoshina, Taka Aki and Yamada, Hidetaka and Tsuji, Tomoya and Hiaki, Toshihiko (2019) CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K. Bunseki Kagaku, 68 (9). pp. 647-655. ISSN 0525-1931 http://dx.doi.org/10.2116/bunsekikagaku.68.647
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic T Technology (General)
spellingShingle T Technology (General)
Fujita, Kento
Okada, Masaki
Hoshina, Taka Aki
Yamada, Hidetaka
Tsuji, Tomoya
Hiaki, Toshihiko
CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K
description The CO2 absorption, density, viscosity, pH, and electric conductivity were measured for aqueous solutions of butylethanolamine (BEA) and methyldiethanolamine (MDEA) at 313.2 K under atmospheric pressure. The CO2 loading [mol-CO2/mol-amine] of aqueous BEA and MDEA solutions studied decreased with increasing BEA and MDEA concentration. The CO2 loading of an aqueous BEA solution was larger than that of an aqueous MDEA solution in the range of 10 - 40 wt% amine concentration. The electric conductivity of the aqueous BEA solution is larger than that of aqueous MDEA solutions, and the amine concentration dependence of the electric conductivities for both solutions studied showed maxima at 10 wt%. The electric conductivities of BEA and MDEA solutions after CO2 absorption increased with increasing CO2 loading. The CO2 loading dependence of the electric conductivity was correlated with a linear function. It may be suggested that the correlation coefficients predict the CO2 loading and amine concentration in solution at 313.2 K.
format Article
author Fujita, Kento
Okada, Masaki
Hoshina, Taka Aki
Yamada, Hidetaka
Tsuji, Tomoya
Hiaki, Toshihiko
author_facet Fujita, Kento
Okada, Masaki
Hoshina, Taka Aki
Yamada, Hidetaka
Tsuji, Tomoya
Hiaki, Toshihiko
author_sort Fujita, Kento
title CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K
title_short CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K
title_full CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K
title_fullStr CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K
title_full_unstemmed CO2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 K
title_sort co2 absorption effect on electric conductivities for butylethanolamine and methyldiethanolamine aqueous solutions at 313 k
publisher Japan Society for Analytical Chemistry
publishDate 2019
url http://eprints.utm.my/id/eprint/89299/
http://dx.doi.org/10.2116/bunsekikagaku.68.647
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score 13.211869